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浮游微囊藻和底栖颤藻对斑马鱼胚胎发育的比较毒理学效应:对蓝藻风险评估的启示。

Comparative toxicological effects of planktonic Microcystis and benthic Oscillatoria on zebrafish embryonic development: Implications for cyanobacteria risk assessment.

机构信息

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography & Limnology, Chinese Academy of Sciences, Nanjing, 210008, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography & Limnology, Chinese Academy of Sciences, Nanjing, 210008, China; Jiangsu Collaborative Innovation Center of Regional Modern Agriculture & Environmental Protection, Huaiyin Normal University, Huaian, 223300, China.

出版信息

Environ Pollut. 2021 Apr 1;274:115852. doi: 10.1016/j.envpol.2020.115852. Epub 2020 Nov 4.

Abstract

Planktonic and benthic cyanobacteria blooms are increasing in frequency in recent years. Although many studies have focused on the effects of purified toxins or cyanobacteria extracts on fish developments, the more complex impacts of cyanobacteria cells on fish populations are still considered insufficient. This study compared the toxicological effects of harmful planktonic Microcystis and benthic Oscillatoria on zebrafish (Danio rerio) early stages of development. Zebrafish embryos, at 1-2 h post fertilization (hpf), were exposed to 5, 10, and 20 × 10 cells/mL Microcystis (producing microcystins) or Oscillatoria (producing cylindrospermopsins) until 96 hpf. The results indicated that the effects of benthic Oscillatoria on embryonic development of zebrafish were different from those of planktonic Microcystis. Reduced hatching rates, increased mortality, depressed heart rates and elevated malformation rates were observed following exposures to increased concentrations of Microcystis, whilst Oscillatoria exposures only caused yolk sac edemas. Exposure to a high concentration of Microcystis induced severe oxidative damage, growth inhibition and transcriptional downregulations of genes (GH, GHR1, IGF1, IGF1rb) associated with the growth hormone/insulin-like growth factor (GH/IGF) axis. Although Oscillatoria exposure did not affect the body growth, it obviously enhanced the antioxidant enzyme activities of superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx) and up-regulated the expressions of several oxidative stress-related genes. Discrepancies in the developmental toxicity caused by Microcystis and Oscillatoria may not only attributed to the different secondary metabolites they secrete, but also to the different adhesion behaviors of algal cells on embryonic chorion. These results suggested that harmful cyanobacteria cells could influence the successful recruitment of fish, while the effects of benthic cyanobacteria should not be ignored. It also highlighted that the necessity for further investigating the ecotoxicity of intact cyanobacterial samples when assessing the risk of cyanobacterial blooms.

摘要

浮游和底栖蓝藻水华近年来发生的频率越来越高。虽然许多研究都集中在纯化毒素或蓝藻提取物对鱼类发育的影响上,但对蓝藻细胞对鱼类种群更复杂的影响仍考虑不足。本研究比较了浮游微囊藻和底栖颤藻对斑马鱼(Danio rerio)早期发育阶段的毒理学影响。斑马鱼胚胎在受精后 1-2 小时(hpf)时,暴露于 5、10 和 20×10 个细胞/mL 的微囊藻(产生微囊藻毒素)或颤藻(产生柱孢藻毒素)中,直到 96 hpf。结果表明,底栖颤藻对斑马鱼胚胎发育的影响与浮游微囊藻不同。暴露于较高浓度的微囊藻后,孵化率降低,死亡率增加,心率降低,畸形率升高,而暴露于颤藻仅导致卵黄囊水肿。暴露于高浓度的微囊藻会引起严重的氧化损伤、生长抑制和与生长激素/胰岛素样生长因子(GH/IGF)轴相关的基因(GH、GHR1、IGF1、IGF1rb)的转录下调。虽然颤藻暴露不影响身体生长,但明显增强了超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GPx)的抗氧化酶活性,并上调了几种与氧化应激相关的基因的表达。微囊藻和颤藻引起的发育毒性的差异不仅可能归因于它们分泌的不同次生代谢物,还可能归因于藻细胞在胚胎绒毛膜上的不同粘附行为。这些结果表明,有害蓝藻细胞可能会影响鱼类的成功繁殖,而底栖蓝藻的影响不应被忽视。这也强调了在评估蓝藻水华风险时,进一步研究完整蓝藻样本的生态毒性的必要性。

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